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      Cone beam CT를 이용한 비글견 발치창 치유과정에 대한 방사선학적 연구 = Radiologic study of the healing process of the extracted socket of beagle dogs using cone beam CT

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      https://www.riss.kr/link?id=A82406238

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      다국어 초록 (Multilingual Abstract)

      Purpose : To longitudinally observe the healing process of extracted socket and the alterations of the residual ridge in healthy adult dogs using cone beam CT (CBCT).
      Materials and Methods : The mandibular premolars of two beagle dogs were removed and the extraction sites were covered with the gingival tissue. CBCTs (3D X-ray CT scanner, Alphard vega, Asahi Co.) were taken at baseline and at 1 week interval for 12 weeks. Radiographic density of extracted wounds was measured on normalized images with a custom-made image analysis program. The amount of alveolar crestal resorption after the teeth extraction was measured with a reformatted three-dimensional image using CBCT. Bony healing pattern of extracted wound of each group was also longitudinally observed and analyzed.
      Results : Dimensional changes occurred during the first 6 weeks following the extraction of dogs’ mandibular premolars. The reduction of the height of residual ridge was more pronounced at the buccal than at the lingual aspect of the extraction socket. Radiographic density of extracted wounds increased by week 4, but the change in density stabilized after week 6. New bone formation was observed at the floor and the peripheral side of extracted socket from week 1. The entrance of extracted socket was sealed by a hard-tissue bridge at week 5.
      Conclusion : The healing process of extracted wound involved a series of events including new bone formation and residual ridge resorption.
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      Purpose : To longitudinally observe the healing process of extracted socket and the alterations of the residual ridge in healthy adult dogs using cone beam CT (CBCT). Materials and Methods : The mandibular premolars of two beagle dogs were removed an...

      Purpose : To longitudinally observe the healing process of extracted socket and the alterations of the residual ridge in healthy adult dogs using cone beam CT (CBCT).
      Materials and Methods : The mandibular premolars of two beagle dogs were removed and the extraction sites were covered with the gingival tissue. CBCTs (3D X-ray CT scanner, Alphard vega, Asahi Co.) were taken at baseline and at 1 week interval for 12 weeks. Radiographic density of extracted wounds was measured on normalized images with a custom-made image analysis program. The amount of alveolar crestal resorption after the teeth extraction was measured with a reformatted three-dimensional image using CBCT. Bony healing pattern of extracted wound of each group was also longitudinally observed and analyzed.
      Results : Dimensional changes occurred during the first 6 weeks following the extraction of dogs’ mandibular premolars. The reduction of the height of residual ridge was more pronounced at the buccal than at the lingual aspect of the extraction socket. Radiographic density of extracted wounds increased by week 4, but the change in density stabilized after week 6. New bone formation was observed at the floor and the peripheral side of extracted socket from week 1. The entrance of extracted socket was sealed by a hard-tissue bridge at week 5.
      Conclusion : The healing process of extracted wound involved a series of events including new bone formation and residual ridge resorption.

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      참고문헌 (Reference)

      1 김규태, "측두하악관절에 대한 cone beam형 전산화단층영상과 자기공명영상의 비교" 대한구강악안면방사선학회 38 (38): 153-162, 2008

      2 Amler MH, "The time sequence of tissue regeneration in human extraction wounds" 27 : 309-318, 1969

      3 Hsieh YD, "The effect of ovariectomy on the healing tooth socket of the rat" 40 : 529-531, 1995

      4 Kullendorff B, "Subtraction radiography for the diagnosis of periapical bone lesions" 4 : 253-259, 1988

      5 Araujo MG, "Ridge alterations following implant placement in fresh extraction sockets: an experimental study in the dog" 32 : 645-652, 2005

      6 Atwood DA, "Reduction of residual ridges: a major oral disease entity" 26 : 266-279, 1971

      7 Boyd SK, "Monitoring individual morphological changes over time in ovariectomized rats by in vivo micro-computed tomography" 39 : 854-862, 2006

      8 Araujo MG, "Modeling of the buccal and lingual bone walls of fresh extraction sites following implant installation" 17 : 606-614, 2006

      9 Foracchia M, "Luminosity and contrast normalization in retinal images" 9 : 179-190, 2005

      10 Lofthag-Hansen S, "Limited cone-beam CT and intraoral radiography for the diagnosis of periapical pathology" 103 : 114-119, 2007

      1 김규태, "측두하악관절에 대한 cone beam형 전산화단층영상과 자기공명영상의 비교" 대한구강악안면방사선학회 38 (38): 153-162, 2008

      2 Amler MH, "The time sequence of tissue regeneration in human extraction wounds" 27 : 309-318, 1969

      3 Hsieh YD, "The effect of ovariectomy on the healing tooth socket of the rat" 40 : 529-531, 1995

      4 Kullendorff B, "Subtraction radiography for the diagnosis of periapical bone lesions" 4 : 253-259, 1988

      5 Araujo MG, "Ridge alterations following implant placement in fresh extraction sockets: an experimental study in the dog" 32 : 645-652, 2005

      6 Atwood DA, "Reduction of residual ridges: a major oral disease entity" 26 : 266-279, 1971

      7 Boyd SK, "Monitoring individual morphological changes over time in ovariectomized rats by in vivo micro-computed tomography" 39 : 854-862, 2006

      8 Araujo MG, "Modeling of the buccal and lingual bone walls of fresh extraction sites following implant installation" 17 : 606-614, 2006

      9 Foracchia M, "Luminosity and contrast normalization in retinal images" 9 : 179-190, 2005

      10 Lofthag-Hansen S, "Limited cone-beam CT and intraoral radiography for the diagnosis of periapical pathology" 103 : 114-119, 2007

      11 Chun IK, "In vivo trabecular thickness measurement in cancellous bones: longitudinal rat imaging studies" 27 : 695-702, 2006

      12 이창진, "In vivo micro-CT를 이용한 난소적출 백서의 골구조 형태계측학적분석" 대한구강악안면방사선학회 38 (38): 29-37, 2008

      13 Farman AG, "In vivo comparison of Visualix-2 and Ektaspeed Plus in the assessment of periradicular lesion dimensions" 85 : 203-209, 1998

      14 Nicopoulou-Karayianni K, "Image processing for enhanced observer agreement in the evaluation of periapical bone changes" 35 : 615-622, 2002

      15 Kim D, "High Content Cellular Analysis for Functional Screening of Novel Cell Cycle Related Genes" 148-152, 2008

      16 Cardaropoli G, "Healing of extraction sockets and surgically produced-augmented and nonaugmented-defects in the alveolar ridge. An experimental study in the dog" 32 : 435-440, 2005

      17 Botticelli D, "Hard-tissue alterations following immediate implant placement in extraction sites" 31 : 820-828, 2004

      18 Wenzel A, "Effect of image enhancement for detectability of bone lesions in digitized intraoral radiographs" 96 : 149-160, 1988

      19 Cardaropoli G, "Dynamics of bone tissue formation in tooth extraction sites. An experimental study in dogs" 30 : 809-818, 2003

      20 Araujo MG, "Dimensional ridge alterations following tooth extraction. An experimental study in the dog" 32 : 212-218, 2005

      21 Lin WL, "Differentiation of periodontal ligament fibroblasts into osteoblasts during socket healing after tooth extraction in the rat" 240 : 492-506, 1994

      22 Pascon EA, "Development of predictable periapical lesion monitored by subtraction radiography" 3 : 192-208, 1987

      23 Arai Y, "Development of a compact computed tomographic apparatus for dental use" 28 : 245-248, 1999

      24 Jahangiri L, "Current perspectives in residual ridge remodeling and its clinical implications: a review" 80 : 224-237, 1998

      25 홍상우, "Cone beam형 전산화단층영상에서 골의 형태와 밀도의 평가" 대한구강악안면방사선학회 38 (38): 49-56, 2008

      26 White SC, "Clinical trials of intraoral dental xeroradiography" 99 : 810-816, 1979

      27 Araki K, "Characteristics of a newly developed dentomaxillofacial X-ray cone beam CT scanner (CB MercuRay): system configuration and physical properties" 33 : 51-59, 2004

      28 구종국, "CBCT 영상에서 무치악부 임프란트 매식체 주위골 골밀도(HU)의정량적 평가" 대한구강악안면방사선학회 38 (38): 1-5, 2008

      29 Shimizu M, "Bone wound healing after maxillary molar extraction in ovariectomized aged rats" 47 : 517-526, 1998

      30 Botticelli D, "Bone tissue formation adjacent to implants placed in fresh extraction sockets:an experimental study in dogs" 17 : 351-358, 2006

      31 Mozzo P, "Andreis IA. A new volumetric CT machine for dental imaging based on the cone-beam technique: preliminary results" 8 : 1558-1564, 1998

      32 Pietrokovski J, "Alveolar ridge resorption following tooth extraction" 17 : 21-27, 1967

      33 Trouerbach WT, "A study of the radiographic aluminum equivalent values of the mandible" 58 : 610-616, 1984

      34 Johnson K, "A study of the dimensional changes occurring in the maxilla after tooth extraction-Part I" 8 : 428-433, 1963

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      연월일 이력구분 이력상세 등재구분
      2023 평가예정 해외DB학술지평가 신청대상 (해외등재 학술지 평가)
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      2019-03-27 학회명변경 한글명 : 대한구강악안면방사선학회 -> 대한영상치의학회 KCI등재
      2012-04-16 학술지명변경 한글명 : 대한구강악안면방사선학회지 -> Imaging Science in Dentistry KCI등재
      2011-03-29 학술지명변경 외국어명 : Korean Journal of Oral and Maxillofacial Radiology -> Imaging Science in Dentistry KCI등재
      2010-01-01 평가 등재학술지 유지 (등재유지) KCI등재
      2008-01-01 평가 등재학술지 유지 (등재유지) KCI등재
      2006-01-01 평가 등재학술지 유지 (등재유지) KCI등재
      2003-01-01 평가 등재학술지 선정 (등재후보2차) KCI등재
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      학술지 인용정보
      기준연도 WOS-KCI 통합IF(2년) KCIF(2년) KCIF(3년)
      2016 0.12 0.12 0.11
      KCIF(4년) KCIF(5년) 중심성지수(3년) 즉시성지수
      0.11 0.12 0.217 0.02
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